WO2022014890A1 - Machine à laver et son procédé de commande - Google Patents
Machine à laver et son procédé de commande Download PDFInfo
- Publication number
- WO2022014890A1 WO2022014890A1 PCT/KR2021/007822 KR2021007822W WO2022014890A1 WO 2022014890 A1 WO2022014890 A1 WO 2022014890A1 KR 2021007822 W KR2021007822 W KR 2021007822W WO 2022014890 A1 WO2022014890 A1 WO 2022014890A1
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- Prior art keywords
- control
- course
- washing machine
- dryer
- option
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F33/00—Control of operations performed in washing machines or washer-dryers
- D06F33/50—Control of washer-dryers characterised by the purpose or target of the control
- D06F33/70—Control of the operating time, e.g. reduction of overall operating time
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/32—Control of operations performed in domestic laundry dryers
- D06F58/34—Control of operations performed in domestic laundry dryers characterised by the purpose or target of the control
- D06F58/48—Control of the energy consumption
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F33/00—Control of operations performed in washing machines or washer-dryers
- D06F33/30—Control of washing machines characterised by the purpose or target of the control
- D06F33/44—Control of the operating time, e.g. reduction of overall operating time
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F33/00—Control of operations performed in washing machines or washer-dryers
- D06F33/30—Control of washing machines characterised by the purpose or target of the control
- D06F33/46—Control of the energy or water consumption
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F33/00—Control of operations performed in washing machines or washer-dryers
- D06F33/50—Control of washer-dryers characterised by the purpose or target of the control
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F33/00—Control of operations performed in washing machines or washer-dryers
- D06F33/50—Control of washer-dryers characterised by the purpose or target of the control
- D06F33/72—Control of the energy or water consumption
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/14—Arrangements for detecting or measuring specific parameters
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/28—Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress
- D06F34/34—Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress characterised by mounting or attachment features, e.g. detachable control panels or detachable display panels
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/32—Control of operations performed in domestic laundry dryers
- D06F58/34—Control of operations performed in domestic laundry dryers characterised by the purpose or target of the control
- D06F58/46—Control of the operating time
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F2105/00—Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F2105/00—Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
- D06F2105/56—Remaining operation time; Remaining operational cycles
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F2105/00—Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
- D06F2105/58—Indications or alarms to the control system or to the user
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/04—Signal transfer or data transmission arrangements
- D06F34/05—Signal transfer or data transmission arrangements for wireless communication between components, e.g. for remote monitoring or control
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/28—Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/28—Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress
- D06F34/32—Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress characterised by graphical features, e.g. touchscreens
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
Definitions
- the present disclosure relates to a washing machine and a control method thereof, and more particularly, to a washing machine and a control method thereof for determining a drying course of the dryer in response to a washing course received from the washing machine.
- the washing course of the washing machine and the drying course of the dryer may be mapped 1:1.
- the drying course of the dryer may also be the standard, and if the washing course of the washing machine is fast, the drying course of the dryer may also be fast.
- the present disclosure is designed to improve the above-described problem, and an object of the present disclosure is to identify one drying course among a plurality of drying courses based on a washing course and control option selected by a user to obtain a result corresponding to the control option. To provide a washing machine and a method for controlling the same.
- the washing machine for achieving the above object includes a display, a communication interface communicating with the dryer, and a processor, and the processor, when receiving a first user input for selecting a washing course, communicates with the washing machine and the washing machine. Controls the display to display a UI for integrated control of a dryer connected to communication, and when a second user input for selecting one of a plurality of control options included in the UI is received, the laundry course selected by the first user input and identifying a drying course of the dryer based on the control option selected by the second user input, and transmitting information corresponding to the identified drying course to the dryer through the communication interface.
- the plurality of control options may be control options applicable to both a washing course of the washing machine and a drying course of the dryer.
- control option may be an option for at least one of energy saving control, general control, and time reduction control.
- the processor obtains control information of the selected washing course according to the selected control option, and obtains the obtained control information of the selected washing course, a drying course of the dryer, and control information of the drying course according to the control option. can be obtained.
- the processor may control the display to display a UI including control information of the washing course and control information of the drying course.
- the processor may provide guide information for recommending at least one control option among the plurality of control options included in the UI based on a user history related to at least one of the washing machine and the dryer.
- the processor may determine a display order of the plurality of control options included in the UI based on a user history related to at least one of the washing machine and the dryer.
- control option may include an option for at least one of energy saving control, general control, and time reduction control
- control power corresponding to the energy saving control is a user history related to at least one of the washing machine and the dryer.
- the control time corresponding to the time reduction control may be determined based on a user history related to at least one of the washing machine and the dryer.
- the processor may identify a detailed option of the drying course based on the selected control option, and transmit the information including the identified detailed option of the detailed drying course to the dryer. can be sent to
- the processor may transmit information corresponding to the identified drying course to the dryer through an external server.
- the method of controlling a washing machine includes, when a first user input for selecting a washing course is received, displaying a UI for integrated control of the washing machine and a dryer connected in communication with the washing machine, including in the UI identifying a drying course of the dryer based on a washing course selected by the first user input and a control option selected by the second user input when a second user input for selecting one of the plurality of control options is received and transmitting information corresponding to the identified drying course to the dryer.
- the plurality of control options may be control options applicable to both a washing course of the washing machine and a drying course of the dryer.
- control option may be an option for at least one of energy saving control, general control, and time reduction control.
- control method obtains control information of the selected washing course according to the selected control option, and obtains the obtained control information of the selected washing course, a drying course of the dryer, and control information of the drying course according to the control option. It may further include the step of obtaining
- the displaying of the UI may display a UI including control information of the washing course and control information of the drying course.
- FIG. 1 is a block diagram illustrating a washing machine according to an embodiment of the present disclosure.
- FIG. 2 is a block diagram illustrating a specific configuration of the washing machine of FIG. 1 .
- FIG. 3 is a block diagram illustrating a dryer according to an embodiment of the present disclosure.
- FIG. 4 is a block diagram illustrating a server according to an embodiment of the present disclosure.
- FIG. 5 is a diagram for explaining a UI for integrated control according to an embodiment.
- FIG. 6 is a diagram for describing a UI displayed after selecting one control option from among the integrated control UIs according to an embodiment.
- FIG. 7 is a diagram for explaining a UI displayed after selecting one control option from among the integrated control UIs according to another exemplary embodiment.
- FIG. 8 is a diagram for explaining a UI displayed after selecting one control option from among the integrated control UIs according to another exemplary embodiment.
- FIG. 9 is a view for explaining a UI displayed after selecting one control option from among the integrated control UIs according to another exemplary embodiment.
- FIG. 10 is a diagram for explaining a UI displayed after selecting one control option from among the integrated control UIs according to another exemplary embodiment.
- FIG. 11 is a diagram for describing a UI displayed after selecting one control option from among the integrated control UIs according to another exemplary embodiment.
- FIG. 12 is a view for explaining a detailed option according to an embodiment for integrated control of the washing machine and the dryer.
- FIG. 13 is a view for explaining a detailed option according to another embodiment for integrated control of the washing machine and the dryer.
- FIG. 14 is a diagram for describing identification information on a plurality of devices connected to a server.
- 15 is a view for explaining an embodiment of controlling a washing machine and a dryer through a server.
- 16 is a flowchart illustrating an embodiment of integrated control using a washing machine, a dryer, and a server.
- 17 is a flowchart illustrating another embodiment of integrated control using a washing machine, a dryer, and a server.
- FIG. 18 is a flowchart illustrating another embodiment of integrated control using a washing machine, a dryer, and a server.
- 19 is a flowchart for explaining another embodiment of integrated control using a washing machine, a dryer, and a server.
- 20 is a flowchart illustrating another embodiment of integrated control using a washing machine, a dryer, and a server.
- 21 is a table for explaining detailed options of a washing course performed in the washing machine.
- 22 is a table for explaining detailed options of a drying course performed in the dryer.
- 23 is a table for explaining a quality level according to a combination of a washing course and a drying course.
- 24 is a graph showing the relationship between time and amount of power in the same quality.
- 25 is a flowchart for explaining an operation of identifying a combination according to a control option among a plurality of courses included in the washing machine and the dryer.
- 26 is a view for explaining an embodiment in which a washing machine and a dryer directly communicate with each other.
- 27 is a flowchart for explaining an embodiment of integrated control using a washing machine and a dryer.
- 28 is a view for explaining an embodiment of integrated control using a washing machine, a dryer, a terminal device, and a server.
- 29 is a flowchart for explaining an embodiment of integrated control using a washing machine, a dryer, a terminal device, and a server.
- FIG. 30 is a flowchart illustrating a method of controlling a washing machine according to an embodiment of the present disclosure.
- expressions such as “have,” “may have,” “include,” or “may include” indicate the presence of a corresponding characteristic (eg, a numerical value, function, operation, or component such as a part). and does not exclude the presence of additional features.
- a component eg, a first component
- another component eg, a second component
- an element may be directly connected to another element or may be connected through another element (eg, a third element).
- a “module” or “unit” performs at least one function or operation, and may be implemented as hardware or software, or a combination of hardware and software.
- a plurality of “modules” or a plurality of “units” are integrated into at least one module and implemented with at least one processor (not shown) except for “modules” or “units” that need to be implemented with specific hardware.
- the term user may refer to a person who uses an electronic device or a device (eg, an artificial intelligence electronic device) using the electronic device.
- a device eg, an artificial intelligence electronic device
- FIG. 1 is a block diagram illustrating a washing machine according to an embodiment of the present disclosure.
- a washing machine 100 may include a display 110 , a communication interface 120 , and a processor 130 .
- the washing machine 100 is a device for washing laundry using the power of a motor, and may be a device for performing operations such as a washing process, a rinsing process, and a dehydration process.
- the display 110 may be implemented as various types of displays, such as a liquid crystal display (LCD), an organic light emitting diode (OLED) display, a plasma display panel (PDP), and the like.
- the display 110 may also include a driving circuit, a backlight unit, and the like, which may be implemented in the form of an a-si TFT, a low temperature poly silicon (LTPS) TFT, or an organic TFT (OTFT).
- the display 110 may be implemented as a touch screen combined with a touch sensor, a flexible display, a three-dimensional display, or the like.
- the display 110 may include a bezel housing the display panel as well as a display panel for outputting an image.
- the bezel may include a touch sensor (not shown) for detecting user interaction.
- the communication interface 120 is configured to communicate with various types of external devices according to various types of communication methods.
- the communication interface 120 includes a Wi-Fi module, a Bluetooth module, an infrared communication module, and a wireless communication module.
- each communication module may be implemented in the form of at least one hardware chip.
- the Wi-Fi module and the Bluetooth module perform communication using a WiFi method and a Bluetooth method, respectively.
- various types of connection information such as an SSID and a session key are first transmitted and received, and various types of information can be transmitted/received after communication connection using this.
- the infrared communication module communicates according to the infrared data association (IrDA) technology, which wirelessly transmits data in a short distance using infrared that is between visible light and millimeter wave.
- IrDA infrared data association
- the wireless communication module includes Zigbee, 3rd Generation (3G), 3rd Generation Partnership Project (3GPP), Long Term Evolution (LTE), LTE Advanced (LTE-A), 4th Generation (4G), 5G It may include at least one communication chip that performs communication according to various wireless communication standards such as (5th Generation).
- 3G 3rd Generation
- 3GPP 3rd Generation Partnership Project
- LTE Long Term Evolution
- LTE-A LTE Advanced
- 4G 4th Generation
- 5G 5G It may include at least one communication chip that performs communication according to various wireless communication standards such as (5th Generation).
- the communication interface 120 is at least one of a wired communication module for performing communication using a LAN (Local Area Network) module, an Ethernet module, a pair cable, a coaxial cable, an optical fiber cable, or an Ultra Wide-Band (UWB) module.
- a wired communication module for performing communication using a LAN (Local Area Network) module, an Ethernet module, a pair cable, a coaxial cable, an optical fiber cable, or an Ultra Wide-Band (UWB) module.
- the communication interface 120 may use the same communication module (eg, Wi-Fi module) to communicate with an external device such as a remote control and an external server.
- an external device such as a remote control and an external server.
- the communication interface 120 may use a different communication module (eg, a Wi-Fi module) to communicate with an external device such as a remote control and an external server.
- a different communication module eg, a Wi-Fi module
- the communication interface 120 may use at least one of an Ethernet module or a WiFi module to communicate with an external server, and may use a BT module to communicate with an external device such as a remote control.
- this is only an embodiment, and when communicating with a plurality of external devices or external servers, the communication interface 120 may use at least one communication module among various communication modules.
- the processor 130 may perform an overall control operation of the washing machine 100 . Specifically, the processor 130 functions to control the overall operation of the washing machine 100 .
- the processor 130 may be implemented as a digital signal processor (DSP), a microprocessor (microprocessor), or a time controller (TCON) for processing a digital signal, but is not limited thereto, and a central processing unit ( central processing unit (CPU), micro controller unit (MCU), micro processing unit (MPU), controller, application processor (AP), graphics-processing unit (GPU) or communication processor (CP)), may include one or more of an ARM processor, or may be defined by a corresponding term
- the processor 130 is a SoC (System on Chip) or LSI (large scale integration) with a built-in processing algorithm. It may be implemented in the form of a field programmable gate array (FPGA), and the processor 130 may perform various functions by executing computer executable instructions stored in a memory.
- DSP digital signal processor
- microprocessor microprocessor
- TCON time controller
- CPU central processing unit
- MCU micro controller unit
- MPU micro processing unit
- AP application processor
- GPU graphics-processing unit
- CP
- the processor 130 controls the display 110 to display a UI for integrated control of the washing machine 100 and the dryer 200 connected in communication with the washing machine 100 and , when a second user input for selecting one of a plurality of control options included in the UI is received, the washing course selected by the first user input and the drying course of the dryer 200 based on the control option selected by the second user input and transmits information corresponding to the identified drying course to the dryer 200 through the communication interface 120 .
- the first user input may be an input for selecting a washing course.
- the washing machine 100 may operate in a plurality of washing courses, and the user may select one of the plurality of washing courses.
- the washing machine 100 may be a home appliance included in an Internet of Things (IoT) network.
- the dryer 200 may be included in the IoT network. That is, the IoT network may include the washing machine 100 and the dryer 200 .
- the washing machine 100 may communicate with the dryer 200 through an IoT network.
- the washing machine 100 may communicate with the dryer 200 through the external server 300 .
- An embodiment related thereto will be described later with reference to FIGS. 15 to 20 .
- the washing machine 100 may directly communicate with the dryer 200 .
- An embodiment related thereto will be described later with reference to FIGS. 26 to 27 .
- the processor 130 may generate a UI for integrated control of the washing machine 100 and the dryer 200 and display it on the display 110 .
- the UI may mean an integrated control UI.
- detailed functions of the washing machine 100 and the dryer 200 may be adjusted or determined according to a user's request.
- the washing machine 100 may provide an integrated control UI to the user.
- a method of providing the integrated control UI may be varied.
- the processor 130 may control the display 110 to display the integrated control UI.
- the processor 130 may transmit information corresponding to the integrated control UI to the terminal device 400 so that the integrated control UI is displayed on the display of the terminal device 400 . An embodiment related thereto will be described later with reference to FIGS. 28 to 29 .
- the integrated control UI may include a plurality of control options.
- the control option may mean a menu or item for how to control the washing machine 100 and the dryer 200 .
- the control option may be an option for at least one of energy saving control, general control, or time reduction control.
- the option corresponding to “energy saving” may mean a control option for operating the washing machine 100 and the dryer 200 in a course with low power consumption.
- the option corresponding to “general” may mean a control option that causes the washing machine 100 and the dryer 200 to operate in a preset course.
- the option corresponding to “reducing time” may mean a control option that causes the washing machine 100 and the dryer 200 to operate in a course that takes the least time.
- the user may select one control option from among a plurality of control options included in the integrated control UI.
- one selected control option may be received as a second user input.
- the processor 130 may identify the drying course based on the washing course selected by the user and the control option selected by the user.
- the dryer 200 may operate in a plurality of drying courses, and the processor 130 may identify a drying course corresponding to a control option selected by the user from among the plurality of drying courses. For example, if the user selects the energy saving control, the processor 130 may identify a drying course with a low power consumption. In addition, when the user selects the time reduction control, the processor 130 may identify a dry course with a low required time to complete the course. Also, when the user selects the standard control, the processor 130 may identify a predefined course (or standard course). Here, the processor 130 may identify the drying course in consideration of the washing course selected by the user in addition to the control option selected by the user.
- the processor 130 may identify the drying course in consideration of both the washing course selected by the user and the control option selected by the user. Even if the control option selected by the user is the same, the identified drying course may be different depending on the washing course selected by the user. A specific embodiment related thereto will be described later with reference to FIGS. 18 to 25 .
- the processor 130 may generate information corresponding to the identified drying course.
- information corresponding to the identified building course may be described as building course information.
- the building course information may include at least one of identification information corresponding to the identified building course, a control command, and a detailed option of the identified building course.
- the identification information corresponding to the drying course may mean a unique number for specifying the identified drying course among the plurality of drying courses.
- the control command may mean a command for starting a drying course.
- the detailed option may mean a detailed function of the identified drying course.
- the detailed option may include at least one of time, drying temperature, and rotation speed, and may further include at least one of power consumption or drying degree as additional information.
- the processor 130 may transmit information (drying course information) corresponding to the generated drying course. For example, the processor 130 may transmit the generated building course information to the server 300 . As another example, the processor 130 may directly transmit the generated drying course information to the dryer 200 . As another example, the processor 130 may transmit the generated drying course information to the terminal device 400 .
- control options may be control options applicable to both the washing course of the washing machine 100 and the drying course of the dryer 200 .
- the control option may refer to a user's control method in integrally controlling the washing machine 100 and the dryer 200 .
- energy saving control, general control, time reduction control, etc. may be control options applicable to the washing machine 100 and the dryer 200 .
- some control options may not be applied according to each course of the washing machine 100 and the dryer 200 .
- the time reduction control option may not be applied to a specific course of the washing machine (eg, "boiled washing course"). This is because a minimum amount of time is required to perform a specific course.
- the processor 130 may determine whether a plurality of control options are applicable to the washing course selected by the user. And, based on the determination result, the processor 130 may display only the control option applicable to the washing course selected by the user from among the plurality of control options in the integrated control UI. According to an embodiment, the processor 130 may display all of the plurality of control options, but may distinguishly display control options applicable to the washing course selected by the user and control options that are not applicable. For example, the processor 130 may display different colors of the unapplicable control option or display a separate object at a position where the unapplicable control option is displayed. A detailed description related thereto will be described later with reference to FIG. 10 .
- the processor 130 may acquire control information of the selected washing course according to the selected control option, and may acquire the drying course of the dryer 200 and control information of the drying course according to the control option based on the acquired control information. have.
- the selected laundry course may mean a laundry course received by the first user input.
- the selected laundry course may be in a state in which a basic detailed option is automatically determined.
- the selected control option may mean a control option received by the second user input.
- the laundry course selected according to the selected control option may have a plurality of meanings.
- the selected laundry course according to the selected control option may mean the laundry course received by the first user input. In this case, it may correspond to an embodiment in which the existing washing course is maintained according to the control option selected by the user.
- the selected laundry course according to the selected control option may mean a laundry course in which some detailed options are determined from the laundry course received by the first user input.
- the laundry course received by the first user input may mean a laundry course in which detailed options are not specifically determined
- the selected laundry course according to the selected control option may mean a laundry course in which detailed options are determined.
- the laundry course selected according to the selected control option may mean a laundry course in which a detailed option of the laundry course received by the first user input is changed.
- a preset basic detailed option may be automatically determined for the laundry course received by the first user input.
- detailed options may be predefined as default values.
- the predefined basic detailed options may be partially changed based on the control option selected by the user.
- the laundry course received by the first user input means a laundry course in which detailed options are defined by default
- the “selected laundry course according to the selected control option” includes at least one detailed option by the second user input. It may mean a changed laundry course.
- a selected washing course according to the selected control option may be described as a “washing course corresponding to the selected control option” or “laundry course including detailed options corresponding to the selected control option”.
- control information may mean at least one of time information and power consumption information.
- control information of the washing (or drying) course may mean at least one of information on time required to complete the washing (or drying) course or information on the amount of power consumed to complete the washing (or drying) course.
- the processor 130 may identify “a selected washing course according to the selected control option” and acquire time information or power consumption information of the identified washing course.
- the drying course of the dryer 200 may be identified based on the acquired control information of the washing course.
- the processor 130 may acquire at least one threshold value corresponding to the control option selected by the user.
- the at least one threshold value corresponding to the control option may mean values serving as criteria for identifying a specific washing course or a specific drying course in performing the control option.
- the at least one threshold may mean at least one of a minimum amount of power consumption that can satisfy quality and a maximum amount of power consumption for saving energy. Accordingly, the amount of power consumed to perform both the washing course and the drying course may have to be equal to or greater than the minimum amount of power consumption and less than the maximum amount of power consumption.
- the processor 130 may determine at least one of the washing course and the drying course in consideration of the minimum amount of power consumption and the maximum amount of power consumption.
- the at least one threshold may include at least one of a minimum time for satisfying quality and a maximum time for reducing time.
- the maximum time may be a predefined time or a time directly input (or received) by a user. Accordingly, the time consumed to perform both the washing course and the drying course may have to be greater than or equal to the minimum time and less than the maximum time.
- the processor 130 may determine at least one of the washing course and the drying course in consideration of the minimum time and the maximum time.
- the processor 130 may control the display 110 to display a UI including control information of a washing course and control information of a drying course.
- the processor 130 may generate an integrated control UI including the acquired control information of the washing course and the acquired control information of the drying course, and display the generated integrated control UI on the display 110 .
- the processor 130 may provide the user with control information of the washing course and the drying course by displaying operation time information and power consumption information according to a control option. A detailed description related thereto will be described later in detail with reference to FIGS. 6 to 8 and FIG. 11 .
- the processor 130 may provide guide information for recommending at least one control option among a plurality of control options included in the UI based on a user history related to at least one of the washing machine 100 and the dryer 200 . .
- the processor 130 may store the user's usage history.
- the processor 130 may identify which control option the user recently selected or which control option the user uses the most based on the user's usage history.
- the processor 130 may determine how the detailed option is changed. For example, the processor 130 may store information indicating that the user has reduced the number of rinses from 3 times to 2 times in a standard laundry course. The processor 130 may determine that the user action to reduce the number of rinsing is to shorten the time. In addition, the processor 130 may store information that the user lowered the drying temperature from the basic 70 degrees to 60 degrees in the drying course. The processor 130 may determine that the user action to lower the drying temperature is for energy saving. The processor 130 may analyze the user behavior pattern to identify a control option corresponding to a value valued by the user.
- the processor 130 may provide guide information for recommending the identified control option among the plurality of control options to the user.
- the guide information may mean an explanatory text or a highlight object informing that a specific control option is recommended in the integrated control UI. A detailed description related thereto will be described later with reference to FIG. 9 .
- the processor 130 may determine the order of the display 110 of the plurality of control options included in the UI based on a user history related to at least one of the washing machine 100 and the dryer 200 .
- the processor 130 may store the user's behavior pattern, and may acquire the frequency of use of each of the plurality of control options based on the stored user's behavior pattern. In addition, the processor 130 may generate an integrated control UI such that a control option with a high frequency of use is displayed thereon. That is, as the frequency of use increases, the control options are displayed above, so that the user can easily select the control options that are frequently used. Meanwhile, depending on the implementation example, the processor 130 may store a behavior pattern in which the user directly changes a detailed option rather than a control option, and based on the stored behavior pattern, the user may identify the most valuable control option. . In addition, the processor 130 may determine the order of the control options in consideration of a value corresponding to the user's behavior of changing detailed options, and display the integrated control UI in the order of the determined control options.
- control option may include an option for at least one of energy saving control, general control, and time reduction control, and the control power corresponding to the energy saving control is related to at least one of the washing machine 100 and the dryer 200 . It may be determined based on the user history, and the control time corresponding to the time reduction control may be determined based on the user history related to at least one of the washing machine 100 and the dryer 200 .
- the control power corresponding to the energy saving control may mean at least one threshold value corresponding to the control option.
- the processor 130 may determine at least one of the washing course and the drying course based on the control option selected by the user.
- at least one threshold value may be used in the determination operation.
- the processor 130 may identify a combination (a specific washing course and a specific drying course group) in which the sum of the power consumption of the washing course and the drying course is equal to or greater than the minimum power consumption and less than the maximum power consumption.
- the minimum amount of power consumption and the maximum amount of power consumption may be determined by the user history. For example, a minimum amount of power consumption, a maximum amount of power consumption, and an average amount of power consumption may be obtained by analyzing the washing and drying usage patterns used by the user for a plurality of times during a predefined period.
- the processor 130 may identify control power corresponding to energy saving based on the acquired power consumption.
- the processor 130 may determine at least one of a washing course and a drying course suitable for the energy saving control selected by the user by using the identified control power as a threshold value.
- control time corresponding to the time reduction control may mean at least one threshold value corresponding to the control option.
- the processor 130 may determine at least one of the washing course and the drying course based on the control option selected by the user.
- at least one threshold value may be used in the determination operation.
- the processor 130 may identify a combination (a specific washing course and a specific drying course group) in which the sum of the time values of the washing course and the drying course is greater than or equal to the minimum time and less than the maximum time.
- the minimum time and the maximum time may be determined by the user history. For example, the minimum time, the maximum time, and the average time may be obtained by analyzing the washing and drying usage patterns used by the user for a plurality of times during a predefined period.
- the processor 130 may identify a control time corresponding to energy saving based on the acquired time.
- the processor 130 may determine at least one of a washing course and a drying course suitable for the time reduction control selected by the user by using the identified control time as a threshold value.
- the processor 130 may identify a detailed option of the drying course based on the selected control option, and transmit information including the detailed option of the identified detailed drying course to the dryer ( 200) can be transmitted.
- a detailed option for the plurality of drying courses may be determined by default. Accordingly, the identified drying course may be based on a detailed option.
- the processor 130 may change the detailed option of the basic drying course according to the control option selected by the user.
- the changed detailed option may be described as a determined (or identified) detailed option.
- the processor 130 may determine a detailed option (drying temperature) that is not already determined according to the control option selected by the user.
- the processor 130 may generate drying course information including the identified drying course and the determined detailed option, and may transmit the generated drying course information to the dryer 200 .
- the processor 130 may transmit information corresponding to the identified drying course to the dryer 200 through the external server 300 .
- the information corresponding to the identified building course may mean building course information.
- the processor 130 may transmit the building course information to the external server 300 .
- the server 300 may transmit the received drying course information to the dryer 200 corresponding to (or mapped to) the washing machine 100 . Meanwhile, a detailed description of an embodiment using the server 300 will be described later with reference to FIGS. 15 to 20 .
- the processor 130 may transmit information corresponding to the identified drying course to the dryer 200 through the server 300 and the terminal device 400 . A detailed description related thereto will be described later with reference to FIGS. 28 to 29 .
- the integrated control method of the washing machine 100 and the dryer 200 according to an embodiment of the present disclosure has been described as receiving a washing course according to a first user input and receiving a control option according to a second user input.
- a control method suitable for a user's needs may be applied to at least one of the washing machine 100 and the dryer 200 .
- the washing course selected by the user may be changed according to the control option, and the drying course and detailed options of the drying course may also be changed according to the control option.
- the operation of the dryer 200 may be different depending on how a washing course and a control option are selected, and various needs of users may be satisfied.
- the integrated control method may determine the washing course and the drying course using the user's history. Accordingly, a control method that is inconsistent and fits the user's usage pattern may be provided to the user.
- the washing machine 100 determines the washing course and the drying course.
- the determining operation is not the washing machine 100 but the dryer 200 and the server 300 . , may be performed in at least one of the terminal devices 400 .
- the washing course is received by the first user input and the control option is received according to the second user input. It may be implemented in the form of determining a washing course and a drying course by receiving only an input. Specifically, the drying course and the washing course may be determined based on the control option received by the second user input.
- the integrated control method may receive a drying course according to a first user input and a control option according to a second user input.
- the integrated control method may determine a detailed option of a drying course, a washing course, a detailed option of a washing course, and the like, based on the received drying course and the received control option.
- the washing course may be performed first and the drying course may be performed later.
- washing machine 100 Although only a simple configuration of the washing machine 100 has been illustrated and described above, various configurations may be additionally provided when implemented. This will be described below with reference to FIG. 2 .
- FIG. 2 is a block diagram illustrating a specific configuration of the washing machine of FIG. 1 .
- the washing machine 100 includes a display 110 , a communication interface 120 , a processor 130 , a memory 140 , a user interface 150 , a speaker 160 , a driving unit 170 , and a detergent supply unit. 181 , it may be composed of a water supply unit 182 and a drainage unit 183 .
- the memory 140 is implemented as an internal memory such as a ROM (eg, electrically erasable programmable read-only memory (EEPROM)) included in the processor 130, a RAM, or the like, or with the processor 130 It may be implemented as a separate memory.
- the memory 140 may be implemented in the form of a memory embedded in the washing machine 100 or may be implemented in the form of a memory detachable from the washing machine 100 according to the purpose of data storage. For example, data for driving the washing machine 100 is stored in a memory embedded in the washing machine 100 , and data for an extension function of the washing machine 100 is stored in a memory detachable from the washing machine 100 . can be
- volatile memory eg, dynamic RAM (DRAM), static RAM (SRAM), or synchronous dynamic RAM (SDRAM)
- non-volatile memory eg, : OTPROM (one time programmable ROM), PROM (programmable ROM), EPROM (erasable and programmable ROM), EEPROM (electrically erasable and programmable ROM), mask ROM, flash ROM, flash memory (such as NAND flash or NOR flash) , a hard drive, or a solid state drive (SSD), in the case of a memory that is implemented as at least one, and is detachable from the washing machine 100, a memory card (eg, compact flash (CF), secure digital (SD)) ), Micro-SD (micro secure digital), Mini-SD (mini secure digital), xD (extreme digital), MMC (multi-media card), etc.), external memory that can be connected to the USB port (e.g. USB memory) ) can be implemented in the case of a memory card (eg, compact flash (CF), secure digital
- the user interface 150 may be implemented as a device such as a button, a touch pad, a mouse, and a keyboard, or may be implemented as a touch screen capable of performing the above-described display function and manipulation input function together.
- the button may be various types of buttons such as a mechanical button, a touch pad, a wheel, etc. formed in an arbitrary area such as the front, side, or rear of the exterior of the washing machine 100 .
- the speaker 160 may be a component that outputs not only various audio data processed in the input/output interface, but also various notification sounds or voice messages.
- the driving unit 170 may include a driving motor.
- the driving unit 170 rotates the drum in which the laundry is accommodated.
- the driving unit 170 may drive the driving motor to rotate the drum in which the laundry is accommodated.
- the driving motor of the driving unit 170 receives power to generate driving force, and the driving unit 170 may transmit the generated driving force to the pulsator alone or to the drum and the pulsator at the same time.
- the driving unit 170 may receive the driving control signal generated by the processor 130 to drive the detergent supply unit 181 so that the detergent included in the detergent supply unit 181 is supplied to the drum containing the laundry.
- the driving unit 170 receives the driving control signal generated by the processor 130 to drive the water supply unit 182 so that washing water is supplied into the drum, or the drain unit so that the washing water accommodated in the drum is discharged out of the washing machine 100 . (183) can be driven.
- the detergent supply unit 181 may supply the detergent stored in the detergent storage unit to the drum in which the laundry is accommodated according to the driving of the driving unit 170 .
- the detergent supply unit 181 may be connected to the detergent tube.
- the detergent supplied from the detergent supply unit 181 may be mixed with water and dissolved.
- water in which the dissolved detergent is mixed may be supplied to the drum in which the laundry is accommodated through the water supply pipe.
- the water supply unit 182 may include a water supply pipe connected to an external water supply source and a water supply valve for opening and closing the water supply pipe. When the water supply valve is opened, water can be supplied from an external water source through the water supply pipe.
- the drain unit 183 may include a pump, a first drain pipe, and a second drain pipe.
- the pump can suck water from the drum.
- One end of the first drain pipe may be connected to the lower portion of the drum, and the other end may be connected to the pump to move water in the drum to the pump.
- One end of the second drain pipe may be connected to the pump, and the other end may be extended to the outside of the washing machine 100 body so that water in the drum is discharged to the outside. Accordingly, when the pump operates, the water in the drum may be discharged to the outside of the washing machine 100 through the first drain pipe and the second drain pipe.
- the washing machine 100 may additionally include a drying unit (not shown).
- the drying unit (not shown) may include a heater and a blowing fan.
- the drying unit (not shown) may apply heat to the drum at a predetermined temperature using a heater and a blower fan, and may dry laundry.
- the dryer (not shown) is not an essential component of the washing machine 100 , and the dryer (not shown) may not be included in the washing machine 100 according to embodiments.
- FIG. 3 is a block diagram illustrating a dryer according to an embodiment of the present disclosure.
- the dryer 200 includes a display 210 , a communication interface 220 , a processor 230 , a memory 240 , a user interface 250 , a speaker 260 , a driving unit 270 , and a heating unit. 281 , a blower fan 282 , a moisture discharge unit 283 , and a temperature sensor 290 .
- the dryer 200 may be a device for drying wet laundry. Specifically, the dryer 200 may use heat to evaporate moisture or use physical force to separate moisture from laundry.
- the description of the display 210, the communication interface 220, the processor 230, the memory 240, the user interface 250, and the speaker 260 is the display 110 of FIGS. 1 and 2, the communication interface 120 , the processor 130 , the memory 140 , the user interface 150 , and the speaker 160 may correspond to the configuration, and thus a redundant description will be omitted.
- the processor 230 may perform an overall control operation of the dryer 200 . Specifically, the processor 230 functions to control the overall operation of the dryer 200 .
- the processor 230 may receive drying course information through the communication interface 220 , and transmit information related to the dryer 200 to the washing machine 100 , the server 300 , or the terminal device 400 .
- the driving unit 270 may include a driving motor, and the driving unit 270 may drive the heating unit 281 and the blowing fan 282 using the driving motor. Specifically, the driving motor of the driving unit 270 may receive power to generate driving force, and the driving unit 270 may transmit the generated driving force to the heating unit 281 and the blowing fan 282 .
- the driving unit 270 may receive the driving control signal generated by the processor 230 and drive the heating unit 281 to supply a heat source to the drum. In addition, the driving unit 270 may receive the driving control signal generated by the processor 230 and drive the blowing fan 282 to circulate the air inside the drum supplied with the heat source.
- the heating unit 281 may be implemented by a gas-type heat source supply method or an electric heat source supply method.
- the gas type may refer to a method of heating air using gas.
- the electric type may refer to a method of heating air using electricity.
- the electric method may be a method using at least one of a heater or a heat pump.
- the heater may be a method of supplying a heat source using a heating wire or the like.
- the heat pump may be a method of supplying a heat source using a refrigerant.
- a heat pump may consist of an evaporator, a compressor and a condenser.
- the blowing fan 282 may mean a fan that purifies the high-temperature air supplied to the drum of the dryer 200 . Specifically, the blowing fan 282 may receive the driving control signal of the driving unit 270 to drive the fan.
- the moisture discharge unit 283 may discharge moisture inside the dryer 200 .
- the dryer 200 may be of a vent type (hot air exhaust method) and a condensing type (hot air dehumidification method) according to a moisture discharge method.
- the temperature sensor 290 may sense a temperature inside the dryer 200 .
- the temperature sensor 290 may include at least one of a first temperature sensor sensing the air temperature of the drum inside the dryer 200 and a second temperature sensor sensing the refrigerant temperature inside the dryer 200 .
- the temperature data sensed by the temperature sensor 290 may be transmitted to the processor 230 , and the processor 230 may control the operation of the dryer 200 based on the sensed temperature data.
- FIG. 4 is a block diagram illustrating a server 300 according to an embodiment of the present disclosure.
- the server 300 may include a communication interface 310 , a memory 320 , and a processor 330 .
- the communication interface 310 , the memory 320 , and the processor 330 may correspond to the configuration of the communication interface 120 , the memory 140 , and the processor 130 of FIGS. 1 and 2 , and thus a redundant description will be omitted. .
- the processor 330 may perform an overall control operation of the server 300 . Specifically, the processor 330 functions to control the overall operation of the server 300 .
- FIG. 5 is a diagram for explaining a UI 500 for integrated control according to an embodiment.
- the washing machine 100 may provide an integrated control UI 500 .
- the washing machine 100 may display the integrated control UI 500 on the display 110 .
- the integrated control UI 500 displays a plurality of control options 501-1, 502-1, 503-1 and description areas 501-2, 502-2, and 503-2 corresponding to the plurality of control options. may include
- control option 501-1 corresponding to “energy saving” may mean a control option with low power consumption in controlling the washing machine 100 and the dryer 200 .
- the UI 501 - 2 may include information including the degree of energy saving.
- control option 502-1 corresponding to “general” may mean a control option operated in a preset course in controlling the washing machine 100 and the dryer 200 .
- the UI 502 - 2 may include a description of a preset course.
- control option 502-1 corresponding to “reducing time” may mean a control option that takes the least time to control the washing machine 100 and the dryer 200 .
- the UI 503 - 2 may include at least one of a time reduction degree and an operation time.
- FIG. 6 is a diagram for explaining a UI displayed after selecting one control option among the integrated control UI 600 according to an embodiment.
- the washing machine 100 may display a new integrated control UI 600 based on one control option selected from the integrated control UI 500 .
- the integrated control UI 500 may be described as an integrated control selection UI
- the integrated control UI 600 may be described as an integrated control result UI.
- the user selects energy saving among a plurality of control options.
- the washing machine 100 may identify a washing course and a drying course.
- the washing machine 100 may acquire control information of the identified washing course and control information of the identified drying course.
- the control information may mean at least one of time information and power consumption information.
- the integrated control UI 600 may include at least one of washing machine 100 control information, dryer 200 control information, and washing machine 100 and dryer 200 control information.
- the integrated control UI 600 may include a table 601 displaying control information corresponding to a general control option and a table 602 displaying control information corresponding to an energy saving control option.
- a table 601 displaying control information corresponding to a general control option
- a table 602 displaying control information corresponding to an energy saving control option.
- the integrated control UI 600 may include only the table 602 .
- FIG. 7 is a diagram for explaining a UI 700 according to another embodiment displayed after selecting one control option among the integrated control UI 500 .
- the washing machine 100 may display a new integrated control UI 700 based on one control option selected from the integrated control UI 500 .
- the user has selected the energy saving control option 501-1 from among the plurality of control options.
- the integrated control UI 700 may include at least one of a graph 701 comparing power consumption of the general control option and the energy saving control option or a graph 702 comparing time. According to an embodiment, when the energy saving control option is selected, the washing machine 100 may display only the graph 701 comparing the amount of power consumption.
- the graphs 701 and 702 may be described in a horizontal bar type, and may include numerical information (eg, “5000W”, “4000W”, “3 hours”, and “4 hours”).
- the integrated control UI 700 may include various types of graphs in addition to the horizontal bar graph.
- FIG. 8 is a view for explaining a UI 800 according to another embodiment displayed after selecting one control option among the integrated control UI 500 .
- the washing machine 100 may display a new integrated control UI 800 based on one control option selected from the integrated control UI 500 .
- the user selects energy saving among a plurality of control options.
- the integrated control UI 800 may include a table 801 displaying control information corresponding to a general control option and a table 802 displaying control information corresponding to an energy saving control option.
- the control information included in the tables 801 and 802 may be at least one of operation time information, power consumption information, course information, and detailed option information.
- the course information may refer to information on which mode each of the washing machine 100 and the dryer 200 operates.
- the detailed option information may mean details of operation modes of the washing machine 100 and the dryer 200 .
- the detailed option of the washing course may include at least one of a washing temperature, a number of times of rinsing, and an intensity of dehydration
- the detailed option of the drying course may include at least one of a drying temperature and a number of rotations.
- the integrated control UI 800 includes the detailed option of the washing course and the detailed option of the drying course, the user can easily understand how the detailed function differs according to the selected control option.
- FIG. 9 is a view for explaining a UI 900 according to another embodiment displayed after selecting one control option among the integrated control UI 500 .
- the washing machine 100 may provide an integrated control UI 900 . Since the description of the UI related to the control option has been described in FIG. 5, a redundant description will be omitted.
- the integrated control UI 900 may include a plurality of control options.
- the washing machine 100 may display the guide UIs 901 and 902 on at least one control option among the plurality of control options.
- the guide UIs 901 and 902 may be UIs for inducing a user's selection.
- the washing machine 100 may analyze the usage history of the washing machine 100 and the dryer 200 by the user to identify a recommended control option based on at least one of a recently used control option or a most used control option.
- guide UIs 901 and 902 corresponding to the identified recommended control options may be displayed on the integrated control UI 900 .
- the guide UI 901 may be a border-shaped UI displayed on the edge of the control option, and the guide UI 902 may be a predefined figure UI displayed on the edge of the control option. Meanwhile, although it has been described in FIG. 9 that the integrated control UI 900 includes both the guide UI 901 and the guide UI 902 , the integrated control UI 900 includes one guide UI 901 and 902 according to an implementation example. ) may be included.
- the user can easily and quickly select a frequently used control option according to the guide UI.
- FIG. 10 is a view for explaining the UI 1000 according to another embodiment displayed after selecting one control option among the integrated control UI 500 .
- the washing machine 100 may provide an integrated control UI 1000 . Since the description of the UI 500 related to the control option has been described in FIG. 5 , a redundant description will be omitted.
- the washing machine 100 may identify a control option corresponding to the washing course selected by the user. Specifically, when the user selects a washing course, the washing machine 100 may identify a control option corresponding to the selected washing course and generate the integrated control UI 1000 including the identified control option. In addition, the washing machine 100 may provide the generated integrated control UI 1000 .
- the integrated control UI 1000 may include a plurality of control options.
- all control options may not be applied to the control course of the washing machine 100 .
- the time reduction control option may not be applied to a specific course of the washing machine (eg, "boiled washing course"). This is because a minimum amount of time is required to perform a specific course. Since simply reducing the time may affect washing and drying quality, the washing machine 100 may selectively apply the time reduction control option for each washing course.
- the integrated control UI 1000 may display a time reduction control option that cannot be applied to the laundry course selected by the user from among the plurality of control options differently from the applicable control options.
- the washing machine 100 may not include, in the integrated control UI 1000 , a time reduction control option that cannot be applied to the washing course selected by the user.
- the washing machine 100 displays the color of the time reduction control option 1000 - 1 that cannot be applied to the washing course selected by the user and the color of the description area 1000 - 2 corresponding to the option different from the color of the applicable control option. can do.
- the washing machine 100 may display the new object 1001-3 at a position where the time reduction control option 1000 - 1 that cannot be applied to the laundry course selected by the user is displayed.
- the new object 1001-3 may be an object in a shape to guide the user that a control option corresponding to the displayed position of the object 1001-3 cannot be applied.
- 11 is a view for explaining a UI 1100 according to another embodiment displayed after selecting one control option among the integrated control UI 500 .
- the washing machine 100 may provide an integrated control UI 1100 including tables 1101 , 1102 , and 1103 including control information corresponding to each of a plurality of control options.
- the integrated control UI 600 according to FIG. 6 includes control information corresponding to the selected control option.
- the integrated control UI 1100 according to FIG. 11 may include control information corresponding to a plurality of control options before the user selects the control options.
- the user can easily check control information for selectable control options as tables 1101 , 1102 , and 1103 .
- FIG. 12 is a view for explaining a detailed option according to an embodiment for integrated control of the washing machine 100 and the dryer 200 .
- the washing machine 100 and the dryer 200 may include a plurality of courses.
- a washing option and a drying option may be determined according to a washing course and control option selected by the user.
- the washing machine 100 determines the washing option as “low water temperature, low dehydration”, determines the drying course as “standard”, and sets the drying option. It can be determined as "low drying level”.
- the washing machine 100 determines the washing option as a “predefined option”, determines the drying course as “custom drying”, and sets the drying option as “ defined options”.
- the washing machine 100 determines the washing option as “dehydration strong”, the drying course as “quick drying”, and the drying option as “ defined options”.
- the washing machine 100 determines the washing option as “low water temperature, dehydration weak”, determines the drying course as “futon”, and sets the drying option can be determined as “low drying level”.
- the washing machine 100 determines the washing option as “predefined option”, determines the drying course as “duvet drying”, and sets the drying option to “ pre-defined options”.
- the washing machine 100 determines the washing option as “dehydration strong”, determines the drying course as “quick drying”, and sets the drying option to “quick drying”. defined options".
- the washing machine 100 and the dryer 200 may include various courses.
- the laundry course may include a basic course and an additional course.
- the basic course may include a standard course, a rapid course, a wool/lingerie course, a rinse and dewatering course, and a detergent-free container washing course.
- Additional courses may include a boiled laundry course, ultra-strong laundry, ultra-saving laundry course, towel course, duvet course, baby clothes course, and outdoor course.
- the building course may include a basic course and an additional course.
- Basic courses may include standard course, custom drying, quick drying, shirt drying, duvet drying, towel drying, delicate clothing drying, synthetic fiber drying, all drying, sportswear drying, and jeans drying.
- Additional courses may include air sterilization course, duvet/dust dusting course, and interior care course.
- FIG. 13 is a view for explaining a detailed option according to another embodiment for integrated control of the washing machine 100 and the dryer 200 .
- the washing machine 100 and the dryer 200 may include a plurality of courses.
- a washing option and a drying option may be determined according to a washing course and control option selected by the user.
- the washing machine 100 determines the washing option as a washing temperature of 30 degrees, the number of times of rinsing twice, and a dehydration strength of about 40 degrees, and sets the drying option to a drying temperature of 40 Also, it can be determined by the slow rotation speed.
- the washing machine 100 determines the washing option to be a washing temperature of 40 degrees, the number of rinses twice, and a spin-drying strength, and sets the drying option to a drying temperature of 60 degrees,
- the rotation speed can be determined in the middle.
- the washing machine 100 determines the washing option as the washing temperature of 50 degrees, the number of rinsing times, and the strongest dehydration strength, and sets the drying option to the drying temperature. It can be determined as 80 degrees, the rotation speed is fast.
- the washing machine 100 determines the washing option to be a washing temperature of 30 degrees, the number of rinses 3 times, and a spin-drying strength, and sets the drying option to a drying temperature of 80 Also, it can be determined by the slow rotation speed.
- the washing machine 100 determines the washing option as a washing temperature of 40 degrees, the number of rinsing 3 times, and the spin-drying strength, and sets the drying option to a drying temperature of 80 Also, the rotation speed can be determined in the middle.
- the washing machine 100 determines the washing option as the washing temperature of 50 degrees, the number of rinsing times, and the strongest dehydration strength, and sets the drying option to the drying temperature. It can be determined as 80 degrees, the rotation speed is fast.
- FIG. 14 is a diagram for describing identification information on a plurality of devices connected to a server.
- the washing machine 100 and the dryer 200 may be included in one network.
- one network may include an Internet of Things (IoT) network.
- the IoT network may include a plurality of home appliances in the home and may communicate with each other.
- the host device managing the IoT network may store at least one of device identification information, device type, and device user for a plurality of devices included in the IoT network.
- the device identification information for the three devices may be #01, #02, and #03. Also, there may be two devices used by the second user user2, and device identification information for the two devices may be #04 and #05.
- 15 is a view for explaining an embodiment of controlling the washing machine 100 and the dryer 200 through the server 300 .
- the washing machine 100 , the dryer 200 , and the server 300 may communicate with each other. Specifically, the washing machine 100 and the dryer 200 may communicate through the server 300 .
- the server 300 may mean a device that communicates with the washing machine 100 and the dryer 200 . Specifically, the washing machine 100 and the dryer 200 may send and receive information to and from the server 300 by using the communication interfaces each included.
- the server 300 may refer to an external server capable of managing the washing machine 100 and the dryer 200 .
- the server 300 may mean a host device of the IoT network including the washing machine 100 and the dryer 200 .
- 16 is a flowchart for explaining an embodiment of integrated control using the washing machine 100 , the dryer 200 and the server 300 .
- the washing machine 100 may receive a first user input (washing course) (S1605).
- the washing machine 100 may display an integrated control UI (S1610). Since the description of the integrated control UI has been described in FIGS. 5, 9, 10, and 11, a redundant description will be omitted.
- the user may select one control option from among a plurality of control options included in the integrated control UI.
- the washing machine 100 may receive a second user input (control option) according to the user's selection (S1615).
- the control option may be at least one of energy saving control, general control, or time reduction control.
- the washing machine 100 may identify the drying course based on the received first user input (washing course) and the second user input (control option) (S1620).
- the washing machine 100 may generate drying course information.
- the building course information may include identification information corresponding to the identified building course, a control command, and detailed options of the identified building course.
- the identification information corresponding to the drying course may mean a unique number for specifying the identified drying course among the plurality of drying courses.
- the control command may mean a command for starting a drying course.
- the detailed option may mean a detailed function of the identified drying course.
- the washing machine 100 may perform a washing course (S1625).
- to proceed with the washing course may mean to execute a control command corresponding to the washing course selected by the first user input.
- the washing machine 100 may start “standard washing course” in step S1625 .
- progress may be replaced with expressions of start, execution, execution, operation, and the like.
- the washing machine 100 may transmit identification information of the washing machine 100 and the identified drying course information (S1630).
- the identification information of the washing machine 100 may mean a washing machine unique number.
- the unique number may mean a number for specifying the washing machine 100 among a plurality of electronic devices.
- the server 300 may receive identification information and drying course information of the washing machine 100 from the washing machine 100 . Then, the washing machine 100 may acquire identification information of the dryer 200 corresponding to the received identification information of the washing machine (S1635).
- the server 300 may store table information in which identification information of the dryer 200 corresponding to identification information of a plurality of washing machines is mapped.
- the server 300 may store a plurality of devices included in a specific IoT network in a mapping table. Accordingly, the server 300 may identify in which IoT network the identification information of the washing machine 100 received from the washing machine 100 is included.
- identification information of the dryer 200 included in the IoT network corresponding to the identification information of the washing machine 100 may be acquired.
- the server 300 may transmit the drying course information received from the washing machine 100 to the dryer 200 corresponding to the identified identification information of the dryer 200 ( S1640 ).
- the dryer 200 may reserve a drying course based on the drying course information received from the server 300 ( S1645 ).
- the washing machine 100 may determine whether the washing course performed in step S1625 has been completed ( S1650 ). And, when the washing course is completed, the washing machine 100 may transmit information indicating that the washing course is completed to the dryer 200 (S1655).
- the dryer 200 may determine whether the laundry has been put into the dryer 200 based on the washing course completion information received from the washing machine 100 ( S1660 ). If there is no laundry in the dryer 200, the dryer 200 may provide a notification for loading laundry (S1665).
- the notification providing method may be at least one of a method of outputting predefined audio data through a speaker or a method of outputting predefined image data through a display. According to an implementation example, the notification may be provided through the user's terminal device.
- the washing machine 100 may proceed with the drying course reserved in step S1645 ( S1670 ).
- 17 is a flowchart illustrating another embodiment of integrated control using the washing machine 100 , the dryer 200 , and the server 300 .
- the washing machine 100 may receive a first user input (washing course) (S1705), and may display an integrated control UI (S1710), and a plurality of control options included in the integrated control UI. of the second user input (control option) may be received (S1715).
- Steps S1705, S1710, and S1715 are the same as steps S1605, S1610, and S1615, and thus redundant descriptions will be omitted.
- steps S1650, S1655, S1660, S1665, and S1670 may be applied to the embodiment of FIG. 17 .
- the washing machine 100 may proceed with a specified washing course based on the first user input (S1720).
- the washing machine 100 may transmit identification information, washing course information, and control option information of the washing machine 100 to the server 300 (S1725).
- the laundry course information may mean identification information corresponding to the laundry course, a control command, and a detailed option of the identified laundry course.
- the identification information corresponding to the laundry course may mean a unique number for specifying the laundry course identified from among the plurality of laundry courses.
- the detailed option may mean a detailed function of the identified laundry course.
- the server 300 may identify the drying course based on the washing course included in the washing course information received from the washing machine 100 and the control option selected by the user (S1730). If the washing course and control options are different, the identified drying course may also be different. Then, the server 300 may obtain identification information of the dryer 200 corresponding to the identification information of the washing machine 100 based on the identification information of the washing machine 100 received from the washing machine 100 ( S1735 ). In addition, the server 300 may generate drying course information including the drying course identified in step S1730 and identification information of the dryer 200 obtained in step S1735 . Then, the server 300 may transmit the generated drying course information to the dryer 200 (S1740).
- the dryer 200 may reserve a drying course based on the drying course information received from the server 300 . In addition, after the washing course performed in the washing machine 100 is completed, the dryer 200 may perform a reserved drying course.
- FIG. 18 is a flowchart illustrating another embodiment of integrated control using the washing machine 100 , the dryer 200 , and the server 300 .
- the washing machine 100 may receive a first user input (washing course) (S1805), may display an integrated control UI (S1810), and a plurality of control options included in the integrated control UI (S1810) of the second user input (control option) may be received (S1815).
- Steps S1805, S1810, and S1815 are the same as steps S1605, S1610, and S1615, and thus redundant descriptions are omitted.
- steps S1650, S1655, S1660, S1665, and S1670 may be applied to the embodiment of FIG. 18 .
- the washing machine 100 may change the detailed option of the washing course based on the control option selected by the user (S1820). For example, when the user selects a standard laundry course, detailed options of the standard laundry course may include a washing time of 1 hour, a washing temperature of 40 degrees, a number of rinsing twice, and a spin-drying strength.
- the washing machine 100 may change the detailed options of the standard washing course to washing temperature, 30 degrees, rinsing times twice, and dehydration strength about.
- the washing machine 100 may identify a drying course and a detailed option of the drying course based on the control option selected by the user ( S1825 ). Specifically, the washing machine 100 may determine the operation performed by the dryer 200 to obtain a result corresponding to the control option selected by the user. In addition, the washing machine 100 may generate drying course information including identification information corresponding to the identified drying course and detailed options of the identified drying course. Then, the washing machine 100 may proceed with the washing course based on the changed detailed option of the washing course (S1830). Then, the washing machine 100 may transmit washing machine identification information and drying course information to the server 300 (S1835).
- the server 300 may obtain identification information of the dryer 200 corresponding to the received washing machine identification information (S1840). And, based on the identified identification information of the dryer 200, the server 300 may transmit the drying course information to the dryer 200 (S1845).
- the dryer 200 may reserve a drying course based on the drying course information received from the server 300 ( S1850 ). In addition, after the washing course performed in the washing machine 100 is completed, the dryer 200 may perform a reserved drying course.
- 19 is a flowchart illustrating another embodiment of integrated control using the washing machine 100 , the dryer 200 , and the server 300 .
- the washing machine 100 may receive a first user input (washing course) (S1905), may display an integrated control UI (S1910), and may include a plurality of control options included in the integrated control UI (S1910). of the second user input (control option) may be received (S1915).
- the washing machine 100 may transmit identification information, washing course information, and control option information of the washing machine 100 to the server 300 ( S1920 ).
- Steps S1905, S1910, S1915, and S1920 are the same as steps S1705, S1710, S1715, and S1720, and thus redundant descriptions will be omitted.
- steps S1650, S1655, S1660, S1665, and S1670 may be applied to the embodiment of FIG. 19 .
- the server 300 may identify the drying course based on the washing course and the control option (S1925). Then, the server 300 may determine the detailed option of the washing course and the detailed option of the drying course (S1930). Specifically, the server 300 may change the detailed option of the laundry course selected by the first user input for a result corresponding to the control option selected by the user, and determine the drying course and the detailed options of the drying course. Then, the server 300 may obtain identification information of the dryer 200 corresponding to the identification information of the washing machine 100 (S1935).
- the server 300 may generate laundry course information including detailed options and control commands of the laundry course.
- the server 300 may generate building course information including detailed options of the building course, a control command, and identification information corresponding to the building course.
- the server 300 may transmit the generated washing course information to the washing machine 100 (S1940). Then, the washing machine 100 may proceed with the washing course based on the detailed option included in the received washing course information (S1945).
- the server 300 may transmit the generated drying course information to the dryer 200 (S1950).
- the dryer 200 may reserve a drying course based on the drying course included in the received drying course information and detailed options of the drying course ( S1955 ).
- the dryer 200 may perform a reserved drying course.
- FIG. 20 is a flowchart for explaining another embodiment of integrated control using the washing machine 100 , the dryer 200 and the server 300 .
- the washing machine 100 may receive a first user input (washing course) (S2005), may display an integrated control UI (S2010), and may include a plurality of control options included in the integrated control UI (S2010). of the second user input (control option) may be received (S2015).
- Steps S2005, S2010, and S2015 are the same as steps S1605, S1610, and S1615, and thus redundant descriptions are omitted. Also, although not described in FIG. 20 to omit overlapping operations, steps S1650, S1655, S1660, S1665, and S1670 may be applied to the embodiment of FIG. 20 .
- the washing machine 100 may acquire control information of a washing course corresponding to the control option selected by the user ( S2020 ).
- the control information may include at least one of time information of a washing course and information on power consumption.
- time information eg, 1 hour
- power consumption information eg, 2000W of a standard washing course
- the washing machine 100 may identify the drying course based on the acquired control information of the washing course (S2025).
- the washing machine 100 may generate drying course information including identification information corresponding to the identified drying course and a control command.
- the washing machine 100 may acquire control information of a drying course corresponding to the control option (S2030). For example, when the user selects energy saving control in the washing machine 100 , the washing machine 100 may identify a drying course corresponding to the standard washing course of the dryer. In addition, the washing machine 100 may acquire time information (eg, 3 hours) and power consumption information (eg, 2500W) of a drying course.
- time information eg, 3 hours
- power consumption information eg, 2500W
- the washing machine 100 may generate an integrated control UI including the control information of the washing course acquired in step S2020 and the control information of the drying course acquired in step S2030 and display the generated integrated control UI (S2035). Then, the washing machine 100 may perform a washing course (S2040).
- the washing machine 100 may transmit identification information and drying course information of the washing machine 100 (S2045).
- the server 300 may acquire identification information of the dryer 200 corresponding to the identification information of the washing machine 100 received from the washing machine 100 (S2050). Then, the server 300 may transmit the received drying course information to the dryer 200 based on the obtained identification information of the dryer 200 ( S2055 ).
- the dryer 200 may reserve a drying course based on the drying course information received from the server 300 . In addition, after the washing course performed in the washing machine 100 is completed, the dryer 200 may perform a reserved drying course.
- a detailed option of a washing course according to a control option may be changed in step S2020, and the washing machine 100 may acquire control information according to the changed detailed option.
- 21 is a table for explaining detailed options of a washing course performed in the washing machine.
- a table 2100 may include a plurality of washing courses that can be performed in the washing machine 100 and detailed options thereof.
- the detailed options of the washing machine 100 may include at least one of time, power consumption, washing temperature, number of rinsing times, spin-drying strength, and washing degree.
- the washing degree may mean washing satisfaction or washing quality. That is, when the washing degree is different, it may mean that the laundry has been cleanly washed.
- the course of the washing machine 100 corresponding to the general control may be a course 1-3 of the table 2100 .
- the course of the washing machine 100 corresponding to the energy saving control may be the 1-2 course of the table 2100 .
- 22 is a table for explaining detailed options of a drying course performed in the dryer.
- a table 2200 may include a plurality of drying courses that may be performed in the dryer 200 and detailed options thereof.
- the detailed option of the dryer 200 may include at least one of time, power consumption, drying temperature, rotation speed, and drying degree.
- the course of the dryer 200 corresponding to the general control may be 2-3 courses of the table 2200 .
- the course of the dryer 200 corresponding to the energy saving control may be the course 3-1 of the table 2200 .
- 23 is a table for explaining a quality level according to a combination of a washing course and a drying course.
- a table 2300 may include an overall quality diagram according to the determined operations of the washing machine 100 and the dryer 200 .
- the quality level may be 1.
- the quality level may mean a satisfaction level combining the washing degree and the drying degree of laundry.
- 24 is a graph showing the relationship between time and amount of power in the same quality.
- a graph 2400 may represent a relationship between time and power consumption according to various embodiments of controlling the washing machine 100 and the dryer 200 in various courses in order to obtain laundry of the same quality.
- the number of times of rinsing of the washing machine 100 may be reduced and dehydration may be strengthened.
- the rotation speed may be increased by increasing the temperature of the dryer 200 to the maximum.
- the control method of the washing machine 100 and the dryer 200 according to an embodiment of the present disclosure may be determined based on the relationship between time and power consumption.
- 25 is a flowchart for explaining an operation of identifying a combination according to a control option among a plurality of courses included in the washing machine and the dryer.
- the washing machine 100 may receive a washing course according to a first user input and a control option according to a second user input ( S2305 ).
- the washing machine 100 may analyze control information according to a selected control option from among control information of a plurality of washing courses and a plurality of drying courses ( S2310 ). For example, assume that the user has selected energy-saving control.
- the washing machine 100 may obtain control information corresponding to each course by using the tables 2100 and 2200 .
- the control information may mean at least one of time and power consumption.
- the washing machine 100 may obtain a sum value of control information of the combined group by combining one of the plurality of washing courses and one of the plurality of drying courses (S2315).
- the control information sum value may include at least one of a time sum value and a power consumption sum value.
- the sum of time may be 3 hours and the sum of power consumption may be 5000Wh.
- the sum of time may be 4 hours and the sum of power consumption may be 4000Wh.
- the embodiment of the table 601 may be an embodiment of a group in which the 1-3 course of the washing machine 100 and the 2-3 course of the dryer 200 are combined.
- the example of the table 602 may be an example of a group in which the 1-2 course of the washing machine 100 and the 3-1 course of the dryer 200 are combined.
- the washing machine 100 determines whether the sum (eg, the sum of power consumption) corresponding to the control option (eg, energy saving) selected by the user among the combined values of the group is less than the first threshold value It can be done (S2320).
- the first threshold value may be a value pre-stored according to a control option.
- the control option is energy saving
- the first threshold value may mean a maximum allowable amount of power consumption in order to save energy.
- the washing machine 100 may store the first threshold value as a predefined amount of power consumption in order not to exceed the maximum amount of power consumption.
- the control option is to shorten the time
- the first threshold value may mean the maximum operation time required to shorten the time.
- the washing machine 100 may store the first threshold value as a predefined time in order not to exceed the maximum time.
- the washing machine 100 may change the combined group ( S2325 ). Then, step S2315 may be performed based on the changed group of combinations.
- the washing machine 100 may determine whether the quality level of the combined group exceeds the second threshold value (S2330).
- the second threshold value may mean a minimum quality level. Even when the control option of saving energy and reducing time is applied, there is a need to satisfy the minimum washing and drying quality. Accordingly, a group that does not satisfy the minimum quality level among various combinations of the washing course and the drying course may be excluded from the final decision.
- the washing machine 100 may change the combined group (S2325). Then, step S2315 may be performed based on the changed group of combinations.
- the washing machine 100 may proceed with the combined group washing course and reserve the combined group drying course (S2335).
- 26 is a view for explaining an embodiment in which a washing machine and a dryer directly communicate with each other.
- the washing machine 100 and the dryer 200 may directly communicate with each other.
- the washing machine 100 and the dryer 200 may be connected by a wired cable, and mutual information may be exchanged through the connected wired cable.
- washing machine 100 and the dryer 200 may be interconnected through a wireless communication interface to directly exchange information.
- 27 is a flowchart for explaining an embodiment of integrated control using a washing machine and a dryer.
- steps S2705, S2710, S2715, S2720, and S2725 may correspond to steps S1605, S1610, S1615, S1620, and S1625 of FIG. 16, and thus redundant description will be omitted.
- the washing machine 100 may transmit drying course information to the dryer 200 (S2730).
- the dryer 200 may reserve a drying course based on the drying course information received from the washing machine 100 ( S2735 ).
- the dryer 200 may perform a reserved drying course.
- steps S2740, S2745, S2750, S2755, and S2760 may correspond to steps S1650, S1655, S1660, S1665, and S1670 of FIG. 16, and thus a redundant description will be omitted.
- 28 is a view for explaining an embodiment of integrated control using a washing machine, a dryer, a terminal device, and a server.
- the washing machine 100 , the dryer 200 , the server 300 , and the terminal device 400 may communicate with each other.
- the terminal device 400 may mean a portable device such as a smart phone or a tablet.
- the terminal device 400 may communicate with a plurality of pre-registered electronic devices.
- the previously registered devices are the washing machine 100 and the dryer 200 .
- the terminal device 400 may receive or transmit information from the washing machine 100 and the dryer 200 .
- the terminal device 400 may communicate with the server 300 .
- the terminal device 400 may transmit information received from the washing machine 100 and the dryer 200 to the server 300 .
- the terminal device 400 may transmit information received from the server 300 to the washing machine 100 and the dryer 200 .
- the washing machine 100 and the dryer 200 may communicate directly as in the embodiment of FIG. 26 , and the washing machine 100 and the dryer 200 may communicate with the server 300 as in the embodiment of FIG. 15 . ) through which communication can be performed.
- the terminal device 400 may be used to perform a specific operation.
- the terminal device 400 may display a UI or provide a notification.
- 29 is a flowchart for explaining an embodiment of integrated control using a washing machine, a dryer, a terminal device, and a server.
- the washing machine 100 may receive a washing course according to a first user input (S2905).
- the washing machine 100 may transmit (input) laundry course information received by the first user input to the terminal device 400 (S2910).
- the terminal device 400 may display the integrated control UI based on the received laundry course information (S2915). Then, the terminal device 400 may receive a control option based on the second user input based on the displayed integrated control UI (S2920). In addition, the terminal device 400 may transmit washing machine identification information, laundry course information, and control option information to the server 300 .
- the server 300 may identify the drying course based on the received laundry course information and the received control option (S2930). Then, the server 300 may determine the detailed option of the washing course and the detailed option of the drying course (S2935). Then, the server 300 may acquire identification information of the dryer 200 corresponding to the received identification information of the washing machine 100 ( S2940 ).
- the server 300 may transmit the washing course information to the washing machine 100 (S2945). Then, the washing machine 100 may proceed with a washing course based on the received washing course information (S2950).
- the server 300 may transmit the drying course information to the dryer 200 (S2955). And, the dryer 200 may reserve a drying course (S2960). In addition, after the washing course performed in the washing machine 100 is completed, the dryer 200 may perform a reserved drying course.
- steps S1650, S1655, S1660, S1665, and S1670 may be applied to the embodiment of FIG. 29 .
- the server 300 may transmit the washing course information and the drying course information to the terminal device 400 .
- the terminal device 400 may display the received laundry course information and the received drying course information on the display of the terminal device 400 ( S2970 ).
- FIG. 30 is a flowchart illustrating a method of controlling a washing machine according to an embodiment of the present disclosure.
- the washing machine 100 when a first user input for selecting a washing course is received, the washing machine 100 and the dryer 200 communicatively connected to the washing machine 100 . ) to display a UI for integrated control (S3005).
- control method when a second user input for selecting one of a plurality of control options included in the UI is received, the washing course selected by the first user input and the dryer 200 based on the control option selected by the second user input are received. ) of the drying course can be identified (S3010). Also, the control method may transmit information corresponding to the identified drying course to the dryer 200 ( S3015 ).
- the plurality of control options may be control options applicable to both the washing course of the washing machine 100 and the drying course of the dryer 200 .
- control option may be an option for at least one of energy saving control, general control, or time reduction control.
- control method further includes acquiring control information of a selected washing course according to the selected control option, and acquiring control information of a drying course of the dryer 200 and a drying course according to the control option based on the acquired control information.
- the displaying of the UI may display a UI including control information of a washing course and control information of a drying course.
- control method further includes providing guide information for recommending at least one control option among a plurality of control options included in the UI based on a user history related to at least one of the washing machine 100 and the dryer 200 . can do.
- control method may further include determining a display order of a plurality of control options included in the UI based on a user history related to at least one of the washing machine 100 and the dryer 200 .
- control option may include an option for at least one of energy saving control, general control, and time reduction control, and the control power corresponding to the energy saving control is related to at least one of the washing machine 100 and the dryer 200 . It may be determined based on the user history, and the control time corresponding to the time reduction control may be determined based on the user history related to at least one of the washing machine 100 and the dryer 200 .
- the step of identifying detailed options of the drying course based on the selected control option and information including the identified detailed options of the detailed drying course are transmitted to the dryer 200 . It may further include the step of transmitting.
- information corresponding to the identified drying course may be transmitted to the dryer 200 through the external server 300 .
- control method of the washing machine 100 as shown in FIG. 30 may be executed on the washing machine 100 having the configuration of FIG. 1 or 2 , and may also be executed on the electronic device having other configurations.
- the control method shown in FIG. 30 may be performed by the server 300 instead of the washing machine 100 .
- various embodiments of the present disclosure described above may be performed through an embedded server provided in an electronic device or an external server of at least one of an electronic device and a display device.
- the various embodiments described above may be implemented as software including instructions stored in a machine-readable storage media readable by a machine (eg, a computer).
- the device is a device capable of calling a stored command from a storage medium and operating according to the called command, and may include the electronic device according to the disclosed embodiments.
- the processor may perform a function corresponding to the instruction by using other components directly or under the control of the processor.
- Instructions may include code generated or executed by a compiler or interpreter.
- the device-readable storage medium may be provided in the form of a non-transitory storage medium.
- 'non-transitory' means that the storage medium does not include a signal and is tangible, and does not distinguish that data is semi-permanently or temporarily stored in the storage medium.
- the method according to the various embodiments described above may be included in a computer program product and provided.
- Computer program products may be traded between sellers and buyers as commodities.
- the computer program product may be distributed in the form of a machine-readable storage medium (eg, compact disc read only memory (CD-ROM)) or online through an application store (eg, Play StoreTM).
- an application store eg, Play StoreTM
- at least a portion of the computer program product may be temporarily stored or temporarily generated in a storage medium such as a memory of a server of a manufacturer, a server of an application store, or a relay server.
- each of the components may be composed of a single or a plurality of entities, and some sub-components of the aforementioned sub-components may be omitted, or other sub-components may be omitted. Components may be further included in various embodiments.
- some components eg, a module or a program
- operations performed by a module, program, or other component may be sequentially, parallelly, repetitively or heuristically executed, or at least some operations may be executed in a different order, omitted, or other operations may be added.
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Abstract
Est divulguée une machine à laver. La machine à laver comprend un dispositif d'affichage, une interface de communication communiquant avec un séchoir, et un processeur ; le processeur commande l'affichage afin d'afficher une interface utilisateur (IU) pour une commande intégrée de la machine à laver et du séchoir lorsqu'une première entrée d'utilisateur permettant de sélectionner un programme de lavage est reçue, et lorsqu'une seconde entrée d'utilisateur permettant de sélectionner une option parmi une pluralité d'options de commande comprises dans l'IU est reçue, identifie un programme de séchage du séchoir sur la base du programme de lavage sélectionné par la première entrée d'utilisateur et de l'option de commande sélectionnée par la seconde entrée d'utilisateur, et transmet des informations correspondant au programme de séchage identifié au séchoir par l'intermédiaire de l'interface de communication.
Priority Applications (3)
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| US17/310,117 US12291812B2 (en) | 2020-07-17 | 2021-06-22 | Washing machine and controlling method thereof |
| CN202180061342.2A CN116157565A (zh) | 2020-07-17 | 2021-06-22 | 洗衣机及其控制方法 |
| EP21841616.2A EP4112799B1 (fr) | 2020-07-17 | 2021-06-22 | Machine à laver et son procédé de commande |
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| KR10-2020-0089126 | 2020-07-17 | ||
| KR1020200089126A KR102958793B1 (ko) | 2020-07-17 | 세탁기 및 그 제어 방법 |
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| WO2022014890A1 true WO2022014890A1 (fr) | 2022-01-20 |
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| PCT/KR2021/007822 Ceased WO2022014890A1 (fr) | 2020-07-17 | 2021-06-22 | Machine à laver et son procédé de commande |
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| US (1) | US12291812B2 (fr) |
| EP (1) | EP4112799B1 (fr) |
| CN (1) | CN116157565A (fr) |
| WO (1) | WO2022014890A1 (fr) |
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| WO2023182629A1 (fr) | 2022-03-25 | 2023-09-28 | 삼성전자 주식회사 | Lave-linge pour commander un sèche-linge et procédé de commande de sèche-linge d'un lave-linge |
| US12492501B2 (en) * | 2022-10-19 | 2025-12-09 | Haier Us Appliance Solutions, Inc. | Systems and methods for calculating drying cycle times in a dryer appliance |
| EP4582618A4 (fr) * | 2022-11-22 | 2025-12-10 | Samsung Electronics Co Ltd | Système de traitement de vêtements et son procédé de commande |
| WO2024250999A1 (fr) * | 2023-06-07 | 2024-12-12 | 青岛海尔洗衣机有限公司 | Procédé et appareil de commande, dispositif, et support de stockage |
| CN120804382B (zh) * | 2025-09-10 | 2025-11-25 | 江苏锦花电子股份有限公司 | 一种用于洗碗机的触摸屏智能监管系统及方法 |
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| KR102253259B1 (ko) | 2019-11-29 | 2021-05-20 | 삼성전자주식회사 | 세탁기 및 그 제어방법 |
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2021
- 2021-06-22 WO PCT/KR2021/007822 patent/WO2022014890A1/fr not_active Ceased
- 2021-06-22 US US17/310,117 patent/US12291812B2/en active Active
- 2021-06-22 EP EP21841616.2A patent/EP4112799B1/fr active Active
- 2021-06-22 CN CN202180061342.2A patent/CN116157565A/zh active Pending
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Also Published As
| Publication number | Publication date |
|---|---|
| EP4112799A1 (fr) | 2023-01-04 |
| US12291812B2 (en) | 2025-05-06 |
| EP4112799B1 (fr) | 2024-10-02 |
| EP4112799A4 (fr) | 2023-08-23 |
| EP4112799C0 (fr) | 2024-10-02 |
| CN116157565A (zh) | 2023-05-23 |
| US20220275556A1 (en) | 2022-09-01 |
| KR20220010348A (ko) | 2022-01-25 |
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